Zhdanov D D, Vasina D A, Orlova E V, Orlova V S, Pokrovskaya M V, Aleksandrova S S, Sokolov N N
Institute of Biomedical Chemistry, Moscow, Russia; Ecological faculty, Peoples Friendship University of Russia, Moscow, Russia.
Ecological faculty, Peoples Friendship University of Russia, Moscow, Russia.
Biomed Khim. 2016 Jul;62(5):544-554. doi: 10.18097/PBMC20166205544.
Human telomerase catalytic subunit hTERT is subjected to alternative splicing results in loss of its function and leads to decrease of telomerase activity. However, very little is known about the mechanism of hTERT pre-mRNA alternative splicing. Apoptotic endonuclease EndoG is known to participate this process. The aim of this study was to determine the role of EndoG in regulation of hTERT alternative splicing. Increased expression of b-deletion splice variant was determined during EndoG over-expression in CaCo-2 cell line, after EndoG treatment of cell cytoplasm and nuclei and after nuclei incubation with EndoG digested cell RNA. hTERT alternative splicing was induced by 47-mer RNA oligonucleotide in naked nuclei and in cells after transfection. Identified long non-coding RNA, that is the precursor of 47-mer RNA oligonucleotide. Its size is 1754 nucleotides. Based on the results the following mechanism was proposed. hTERT pre-mRNA is transcribed from coding DNA strand while long non-coding RNA is transcribed from template strand of hTERT gene. EndoG digests long non-coding RNA and produces 47-mer RNA oligonucleotide complementary to hTERT pre-mRNA exon 8 and intron 8 junction place. Interaction of 47-mer RNA oligonucleotide and hTERT pre-mRNA causes alternative splicing.
人类端粒酶催化亚基hTERT会发生可变剪接,导致其功能丧失并致使端粒酶活性降低。然而,关于hTERT前体mRNA可变剪接的机制却知之甚少。已知凋亡核酸内切酶EndoG参与了这一过程。本研究的目的是确定EndoG在调控hTERT可变剪接中的作用。在CaCo-2细胞系中过表达EndoG期间、用EndoG处理细胞质和细胞核后以及用EndoG消化细胞RNA后的细胞核孵育后,均检测到b-缺失剪接变体的表达增加。在裸核中以及转染后的细胞中,47聚体RNA寡核苷酸可诱导hTERT可变剪接。鉴定出长链非编码RNA,它是47聚体RNA寡核苷酸的前体。其大小为1754个核苷酸。基于这些结果,提出了以下机制。hTERT前体mRNA从编码DNA链转录而来,而长链非编码RNA从hTERT基因的模板链转录而来。EndoG消化长链非编码RNA并产生与hTERT前体mRNA外显子8和内含子8交界位置互补的47聚体RNA寡核苷酸。47聚体RNA寡核苷酸与hTERT前体mRNA的相互作用导致可变剪接。